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皱腹枫蚜瘿内转化酶活性增强。

Enhanced invertase activities in the galls of Hormaphis hamamelidis.

作者信息

Rehill Brian J, Schultz Jack C

机构信息

Pesticide Research Laboratory, Department of Entomology, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Chem Ecol. 2003 Dec;29(12):2703-20. doi: 10.1023/b:joec.0000008014.12309.04.

Abstract

Invertases are sucrose hydrolyzing enzymes often associated with plant tissues acting as physiological sinks, and plant galls are physiological sinks. We investigated several types of invertase and their potential benefits in galls of the aphid Hormaphis hamamelidis. Invertase activities in galls differed from those in leaves throughout the growing season. Vacuolar invertase activities (per g FW) were always greater in galls than leaves. In contrast, cell wall invertase activities per g FW started low in galls, but increased with time and were greater than those in leaves after 1 month. Gall growth was most closely related to vacuolar invertase activity, whereas leaf growth was correlated with both vacuolar and cell wall invertase activities. In separate correlational studies of aphid fecundity and invertase activities, cell wall invertase activity per gall accounted for 15-21% of the variation in offspring per gall. Gall dry weight explained more of the variation in offspring per gall (34.2%) than did gall volume (17.8%), a likely indication of the importance of sink strength over the life of the gall. Increased invertase activity probably underlies the enhanced sink strength commonly observed in galls. Hormaphis hamamelidis fundatrices appear to maximize reproductive output by eliciting multiple beneficial responses from their hosts. Initial gall growth correlated positively with high vacuolar invertase activity, while later in the season aphid fecundity correlated positively with cell wall invertase activity.

摘要

转化酶是一类蔗糖水解酶,常与作为生理库的植物组织相关联,而植物虫瘿就是生理库。我们研究了几种类型的转化酶及其在蚊母直喙蚜虫瘿中的潜在益处。在整个生长季节,虫瘿中的转化酶活性与叶片中的不同。每克鲜重的液泡转化酶活性在虫瘿中始终高于叶片。相比之下,每克鲜重的细胞壁转化酶活性在虫瘿中起初较低,但随时间增加,1个月后高于叶片中的活性。虫瘿生长与液泡转化酶活性关系最为密切,而叶片生长与液泡和细胞壁转化酶活性均相关。在关于蚜虫繁殖力与转化酶活性的单独相关性研究中,每个虫瘿的细胞壁转化酶活性占每个虫瘿后代变异的15 - 21%。虫瘿干重比虫瘿体积能解释更多每个虫瘿后代的变异(分别为34.2%和17.8%),这可能表明在虫瘿生命周期中库强度的重要性。转化酶活性增加可能是虫瘿中常见的库强度增强的基础。蚊母直喙蚜的原始蚜似乎通过引发宿主的多种有益反应来最大化繁殖输出。最初的虫瘿生长与高液泡转化酶活性呈正相关,而在季节后期,蚜虫繁殖力与细胞壁转化酶活性呈正相关。

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